首页> 外文OA文献 >Loading-related Regulation of Transcription Factor EGR2/Krox-20 in Bone Cells Is ERK1/2 Protein-mediated and Prostaglandin, Wnt Signaling Pathway-, and Insulin-like Growth Factor-I Axis-dependent*
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Loading-related Regulation of Transcription Factor EGR2/Krox-20 in Bone Cells Is ERK1/2 Protein-mediated and Prostaglandin, Wnt Signaling Pathway-, and Insulin-like Growth Factor-I Axis-dependent*

机译:骨细胞中转录因子EGR2 / Krox-20的负荷相关调节是ERK1 / 2蛋白介导的,前列腺素,Wnt信号通路和胰岛素样生长因子-I轴依赖性*

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摘要

Of the 1,328 genes revealed by microarray to be differentially regulated by disuse, or at 8 h following a single short period of osteogenic loading of the mouse tibia, analysis by predicting associated transcription factors from annotated affinities revealed the transcription factor EGR2/Krox-20 as being more closely associated with more pathways and functions than any other. Real time quantitative PCR confirmed up-regulation of Egr2 mRNA expression by loading of the tibia in vivo. In vitro studies where strain was applied to primary cultures of mouse tibia-derived osteoblastic cells and the osteoblast UMR106 cell line also showed up-regulation of Egr2 mRNA expression. In UMR106 cells, inhibition of β1/β3 integrin function had no effect on strain-related Egr2 expression, but it was inhibited by a COX2-selective antagonist and imitated by exogenous prostaglandin E2 (PGE2). This response to PGE2 was mediated chiefly through the EP1 receptor and involved stimulation of PKC and attenuation by cAMP/PKA. Neither activators nor inhibitors of nitric oxide, estrogen signaling, or LiCl had any effect on Egr2 mRNA expression, but it was increased by both insulin-like growth factor-1 and high, but not low, dose parathyroid hormone and exogenous Wnt-3a. The increases by strain, PGE2, Wnt-3a, and phorbol 12-myristate 13-acetate were attenuated by inhibition of MEK-1. EGR2 appears to be involved in many of the signaling pathways that constitute early responses of bone cells to strain. These pathways all have multiple functions. Converting their strain-related responses into coherent “instructions” for adaptive (re)modeling is likely to depend upon their contextual activation, suppression, and interaction probably on more than one occasion.
机译:在微阵列揭示的1,328个基因中,通过废用或在小鼠胫骨成骨后短短一个小时内的8小时内受到差异调节,通过注释亲和力预测相关转录因子的分析显示转录因子EGR2 / Krox-20为与其他途径和功能的联系更为紧密。实时定量PCR证实了通过体内胫骨的加载来上调Egr2 mRNA的表达。体外研究表明,将应变应用于小鼠胫骨来源的成骨细胞的原代培养中,成骨细胞UMR106细胞系也显示出Egr2 mRNA表达的上调。在UMR106细胞中,β1/β3整合素功能的抑制对菌株相关的Egr2表达没有影响,但被COX2选择性拮抗剂抑制,并被外源性前列腺素E2(PGE2)模仿。对PGE2的反应主要通过EP1受体介导,涉及对PKC的刺激和cAMP / PKA的衰减。一氧化氮,雌激素信号传导或LiCl的激活剂或抑制剂均未对Egr2 mRNA表达产生任何影响,但胰岛素样生长因子-1和高剂量(但不低剂量)的甲状旁腺激素和外源性Wnt-3a均可使其增加。菌株,PGE2,Wnt-3a和佛波醇12-肉豆蔻酸酯13-乙酸酯的增加通过抑制MEK-1而减弱。 EGR2似乎参与了许多构成骨细胞对应变的早期反应的信号通路。这些途径均具有多种功能。将其与应变相关的响应转换为用于适应性(重新)建模的连贯“指令”,很可能取决于它们的上下文激活,抑制和交互作用,可能不止一次。

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